WO2015078011A1 - Appareil d'atomisation, cigarette électronique et procédé de régulation de l'alimentation en huile - Google Patents

Appareil d'atomisation, cigarette électronique et procédé de régulation de l'alimentation en huile Download PDF

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Publication number
WO2015078011A1
WO2015078011A1 PCT/CN2013/088238 CN2013088238W WO2015078011A1 WO 2015078011 A1 WO2015078011 A1 WO 2015078011A1 CN 2013088238 W CN2013088238 W CN 2013088238W WO 2015078011 A1 WO2015078011 A1 WO 2015078011A1
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WIPO (PCT)
Prior art keywords
oil
atomizing
passage
atomizing device
atomization
Prior art date
Application number
PCT/CN2013/088238
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English (en)
Chinese (zh)
Inventor
刘秋明
Original Assignee
吉瑞高新科技股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by 吉瑞高新科技股份有限公司 filed Critical 吉瑞高新科技股份有限公司
Priority to CN201380081321.2A priority Critical patent/CN106028847B/zh
Priority to PCT/CN2013/088238 priority patent/WO2015078011A1/fr
Publication of WO2015078011A1 publication Critical patent/WO2015078011A1/fr

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    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/50Control or monitoring
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/48Fluid transfer means, e.g. pumps
    • A24F40/485Valves; Apertures
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors

Definitions

  • the present invention relates to the field of electronic cigarette technology, and in particular to an atomizing device and an electronic cigarette and oil supply control method therewith.
  • Electronic cigarettes are common smoking alternatives, and electronic cigarettes generally include an atomizing device and a power supply device.
  • the atomizing device contains a heating wire to atomize the smoke oil stored in the atomizing device to form smoke for the user to smoke.
  • an accommodating space separated by an oil cup or an atomizing sleeve is generally used as a storage container for the smoky oil.
  • a first oil-repellent member is inserted into the storage container, so that the storage container is sealed, and a smoke oil permeation hole is opened on the first oil-repellent member for the smoke oil to flow out during the operation of the electronic cigarette.
  • electronic cigarettes are susceptible to vibration during transportation or storage, resulting in oil leakage.
  • the object of the present invention is to provide an atomization device and an electronic cigarette and an oil supply control method thereof, which are capable of causing oil leakage in the transportation or storage process of the electronic cigarette existing in the prior art.
  • the atomizing device can prevent oil leakage.
  • the invention provides an atomization device for forming an electronic cigarette in combination with a power supply device, the atomization device comprising an atomization assembly, an oil storage assembly for containing the oil, and the atomization device is further provided An atomization passage for the circulation of the smoke, an oil storage chamber is disposed in the oil storage assembly, and an oil and oil passage for circulating the smoke oil is disposed between the atomization assembly and the oil storage chamber, the smoke oil
  • the upper cover of the passage is provided with a seal for sealing the oil passage, the atomization device further comprising a control member, the control member is movably mounted in the atomization passage and connected to the seal, Control For moving according to the flow of airflow within the atomization passage to cause the seal to open or close the smoke passage.
  • the oil storage assembly is provided with a first flow hole serving as the oil passage, and the seal is disposed in the first flow hole .
  • the atomization device further includes an atomization sleeve, and the atomization assembly and the oil storage assembly are disposed in the atomization sleeve.
  • the oil storage assembly includes an oil storage cup and a first oil separating member, and the oil storage chamber is formed in the oil storage cup.
  • One end of the oil storage cup has an open end facing the atomizing assembly, the first oil separating member is inserted into the open end, and the first oil distributing member is provided with the first circulation hole.
  • the second oil-repellent member is further inserted into the open end of the oil storage cup, and the second oil-repellent member is located on a side of the first oil-removing member away from the open end.
  • a second flow hole is defined in the second oil separating member at a position corresponding to the first flow hole, and the second flow hole is covered with the sealing member.
  • the sealing member includes a fixed end and a free end, the fixed end is fixedly connected to the first oil separating member, and the free end is disposed on the opposite side from the fixed end Abutting the control member.
  • the seal member and the first oil barrier member are integrally formed.
  • the control member includes a movable member and at least one abutting arm, one end of each of the abutting arms is fixedly coupled to the movable member, and the movable member is movably mounted in the mist In the passage, the other end of each of the abutment arms abuts the free end of the seal.
  • the movable member is a flat plate, and the shape of the movable member is adapted to the shape of the cross section of the atomizing passage.
  • a plurality of first through holes are formed in the movable member along the axial direction of the atomization sleeve.
  • each of the abutting arms includes a bent portion, a connecting portion and an abutting portion, and the bent portion is vertically connected to an edge of one side of the movable member, the abutting portion and the abutting portion
  • the bent portions are arranged in parallel, and the connecting portion is vertically connected between the abutting portion and both end portions of the bent portion.
  • the bent portion, the connecting portion, and the abutting portion are integrally formed and formed into a frame having an inverted U-shaped longitudinal section.
  • the control member includes a movable member and a connecting arm, the movable member is movably mounted in the atomizing passage, and one end of the connecting arm is fixedly coupled to one side edge of the movable member The other end of the connecting arm is fixedly connected to the sealing member, and the sealing member, the connecting arm and the movable member are located in the same plane.
  • a through hole is defined in a sidewall of the oil storage cup, and one end of the connecting arm is fixedly connected to the sealing member through the through hole; the through hole and the connecting arm
  • the abutment forms an active fulcrum; when the movable member moves according to the flow of the airflow in the atomization passage, the seal is driven to move around the movable fulcrum in a direction opposite to the moving direction of the movable member to Turn the smoke oil passage on or off.
  • the atomization sleeve is further provided with a partition member disposed axially along the atomization sleeve, and the partition member divides the inner space of the atomization sleeve into a cigarette for storage.
  • the oil reservoir and the atomization passage of oil are provided.
  • the partition member has a hollow cylindrical shape or a strip shape.
  • the oil storage assembly further includes an oil smoke buffer member made of a porous material disposed on the oil passage between the first oil barrier and the atomization assembly;
  • the atomizing assembly includes an oil guiding rope and a heating wire wound around the oil guiding rope, and the oil guiding rope abuts on the smoke oil buffer member.
  • the sealing member is made of a soft rubber material.
  • the invention provides an electronic cigarette comprising an atomizing device and a power supply device for supplying power to the atomizing device, the atomizing device being an atomizing device as described above.
  • the invention provides an oil supply control method for an electronic cigarette, comprising the following steps:
  • the control member causes the sealing member to open the smoke oil passage according to the flow direction of the first air flow, and the smoke oil in the oil storage chamber is exported and transported through the smoke oil flow passage. Giving an atomizing assembly to cause the smoke oil to evaporate by heating to generate smoke;
  • control member causes the seal to close the oil passage according to the movement of the second airflow.
  • the invention has the beneficial effects of opening or closing the smoky oil passage by installing a control member in the smoky oil passage of the atomizing device which can flow according to the flow of the air in the atomizing passage. Therefore, the use of the atomizing device provided by the present invention can prevent the occurrence of oil leakage during transportation. At the same time, since the present invention designs a movable control member to open or close the oil passage according to the user's demand, the utilization rate of the smoke oil is improved.
  • Figure 1 is an exploded view of the atomizing device of the first embodiment provided by the present invention
  • Figure 2 is a cross-sectional view of the atomizing device shown in Figure 1 after assembly;
  • FIG. 3 is a schematic structural view of the control member of Figure 1;
  • Figure 4 is a schematic structural view of the first oil separating member of Figure 1;
  • Figure 5 is a schematic structural view of the smoke oil buffer of Figure 1;
  • FIG. 6 is a schematic structural view of the atomization device according to the first embodiment of the present invention when it is in a closed state;
  • Figure 7 is a schematic structural view of the atomization device according to the first embodiment of the present invention when it is in an open state;
  • Figure 8 is a cross-sectional view of the atomization device of the second embodiment of the present invention after assembly
  • FIG. 9 is a schematic structural view of the control member of Figure 8.
  • Figure 10 is a schematic structural view of the first oil barrier member of Figure 8.
  • Figure 11 is a schematic structural view of the second oil separating member of Figure 8.
  • Figure 12 is a cross-sectional view of the atomization device of the third embodiment of the present invention after assembly
  • Figure 13 is a schematic view showing the structure of the control member of Figure 12;
  • the atomization device provided by the invention can be used in detachable electronic cigarettes as well as in disposable electronic cigarettes.
  • the atomization device includes an atomization assembly and an oil storage assembly for containing the oil, the oil storage assembly is provided with an oil storage chamber, and the atomization assembly and the oil storage chamber are provided with a smoke oil circulation
  • the smoky oil passage, the present invention is designed in the form that the smoky oil passage is completely open, and the smoky oil passage can be opened or closed according to different working states, that is, a flow can be set according to the air flow in the atomizing device. Mobile control.
  • the control member closes the oil passage by controlling the sealing member, prevents the outflow of the oil, and avoids the leakage of the oil due to the vibration of the oil during transportation or storage. phenomenon.
  • the control member moves according to the flow of the airflow to cause the seal to open the smoke passage, from which the smoke oil flows.
  • the structural form is designed such that the electronic cigarette is closed in the transportation or storage process, and the leakage of the oil and oil in the transportation or storage process of the prior art is overcome, and the utilization rate of the smoke oil is low. Defects.
  • the atomizing device includes a connection assembly 1, an atomization assembly 2, an oil storage assembly 3 having an oil reservoir, and an atomization sleeve 10.
  • An oil passage for the flow of the smoke oil is disposed between the atomization assembly 2 and the oil reservoir.
  • the connection assembly 1 is inserted into the end of the atomization sleeve 10.
  • the oil storage assembly 3 is housed in the atomizing sleeve 10.
  • the atomizing assembly 2 is housed in the atomizing sleeve 10 and between the oil storage assembly 3 and the connecting assembly 1.
  • the atomizing sleeve 10 has a cylindrical tubular structure that is hollow inside to form a receiving cavity for accommodating the internal components of the atomizing device.
  • one end of the atomizing sleeve 10 is a closed end, and the other end is an open end.
  • the closed end is provided with a nozzle hole 11 for the user to smoke, and the open end is inserted into the connecting component 1 , and is preferably inserted in an interference fit manner.
  • other engaging manners may be connected.
  • the connection assembly 1 is disposed at the open end of the atomization sleeve 10 for connection to a power supply device of the electronic cigarette.
  • the connecting component 1 includes a first seat body 80 that is inserted into the open end of the atomizing sleeve 10, and a first electrode 91 that is fixed to the middle of the first seat body 80 by the first insulating sleeve 90.
  • the first base 80 and the first electrode 91 are made of a metal conductive material, wherein the first base 80 is a metal threaded tube.
  • An external thread for connecting to the power supply device is partially formed on the outer peripheral wall of the first body 80.
  • the inner portion of the first base body 80 is connected to the first insulating sleeve 90 with an interference fit, and the inside of the first insulating sleeve 90 is There is a through hole through which the first electrode 91 can be disposed, such that one end of the first electrode 91 faces the atomization assembly, and the other end of the first electrode 91 faces the power supply device, and the atomization device is respectively passed through the first electrode 91 and the first base 80 Conductive connection with the power supply unit.
  • the first insulating sleeve 90 is made of an insulating material for isolating the first body 80 and the first electrode 91.
  • the outer contour of the first seat body 80 facing the one end of the atomization sleeve 10 is adapted to the inner contour of the open end of the atomization sleeve 10, and is fixed to the atomization by an interference fit.
  • the side wall of the first body 80 located in the open end of the atomizing sleeve 10 encloses a receiving space (not numbered).
  • the atomizing assembly 2 includes an atomizing base 70 and a heating assembly (not numbered).
  • the atomizing seat 70 is housed in the accommodation space of the first seat body 80 at the open end of the atomizing sleeve 10.
  • the atomizing base 70 is made of an elastic material having a certain elastic deformation ability such as a silica gel, and is fastened and fixed to the receiving space of the first seat body 80 by the outer wall thereof.
  • the heating assembly is fixed between the atomizing base 70 and the oil storage assembly 3. After the electronic cigarette is energized, the heating assembly is used to heat and atomize the oil in the oil storage assembly 3 for smoking.
  • the heating assembly includes a heating wire 60 that is hollow in a spiral shape and an oil guiding wire 50 (see FIG. 2) that can be used to support the heating wire 60.
  • a heating wire 60 is wound around the oil guiding cord 50. Both ends of the wick 50 are respectively abutted on the oil storage assembly 3 to guide the smoky oil to the heating assembly to heat atomize.
  • the two ends of the heating wire 60 extend through the side wall of the atomizing base 70.
  • One end of the heating wire 60 is connected to the first electrode 91, and the other end of the heating wire 60 is connected to the first body 80.
  • the first electrode 91 and the first base 80 are respectively connected to the positive and negative connectors in the power supply device to form an electrically conductive connection.
  • An oil storage assembly 3 is provided with an atomizing passage 110 for the circulation of smoke, including a soot buffer member 40, a first oil separating member 20, a control member 30, a sealing member 201, and an oil storage cup 120 (see Fig. 2).
  • the first oil separating member 20 is inserted into one end of the oil storage cup 120.
  • the smoky oil buffer member 40 is disposed between the first oil damper member 20 and the atomizing assembly 2.
  • the seal 201 is covered on the oil passage.
  • the control member 20 is movably mounted in the atomization passage 110 and abuts against the seal 201.
  • the oil storage cup 120 may also be designed as a sealing structure with only an oil passage to replace the first oil barrier 20 .
  • a layer of the smoke oil buffer member 40 is disposed between the atomization assembly 2 and the first oil barrier member 20, which may be pasted. Or a method such as sewing is provided on the first grease trap 20.
  • the smoke oil buffer member 40 is made of a porous material, and may be a non-woven fabric, a wood pulp fiber, a chemical fiber or a polyvinyl alcohol fiber. Such a material can make the oil storage buffer 40 have a large oil storage capacity and effectively prevent it. After the smoke oil flows out from the smoke oil passage, it flows into the atomization passage, and then flows into the smoker's mouth through the atomization passage, thereby affecting the user's mouthfeel.
  • the smoke oil buffer member 40 is located between the first oil separating member 20 and the heating assembly, and can be firstly permeated and evenly distributed on the smoke oil buffer member 40 through the smoke oil buffer member 40 after the smoke oil flows out to avoid direct flow of the smoke oil. Uneven distribution of smoke oil to the heating element.
  • the two ends of the oil guiding rope 50 respectively abut on the oil sump buffer 40 for guiding the oil to the heating assembly to heat atomize the oil.
  • the oil storage cup 120 in order to store the soot oil, is provided.
  • the oil storage cup 120 is disposed along the axial direction of the atomization sleeve 10 and integrally formed with the atomization sleeve 10, and the oil storage cup 120 is formed with a cavity for accommodating the oil as the oil reservoir.
  • the oil storage cup 120 has a smoke oil passage for the circulation of the smoke oil.
  • the atomizing sleeve 10 further includes a partition 111.
  • the partitioning member 111 has a strip-shaped plate shape extending in the axial direction toward the opening end of the atomizing sleeve 10, and the length of the extending portion can be stored according to the amount of the soot oil to be stored and the length of the atomizing sleeve 10. Decide.
  • a partitioning member 111 disposed inside the atomizing sleeve 10 divides the inner hollow portion of the atomizing sleeve 10 into two portions, one serving as an oil reservoir and the other serving as an atomizing passage 110 for the flow of smoke.
  • the partitioning member 111 is preferably integrally formed with the atomizing sleeve 10, so that the sealing effect is better, the assembly is simple, and the molding process is simple.
  • the atomization passage 110 communicates with the nozzle hole 11.
  • the smoke oil is heated and atomized by the heating assembly, and the formed smoke flows out through the atomizing passage 110 to the nozzle hole 11.
  • the oil storage cup 120 can also be a separate oil cup housed inside the atomization sleeve 10. The oil cup can be replaced and detachable. After the smoke oil is used up, the oil can be directly injected into the oil cup. Yes, it is convenient for users to use.
  • the first oil permeable member 20 is provided (see Fig. 2).
  • One end of the oil storage cup 120 facing the atomizing assembly 2 is an open end, and the first oil separating member 20 is inserted into the open end.
  • the first oil separating member 20 is made of an elastic material such as silicone rubber or rubber.
  • the outer contour of the first oil separating member 20 is adapted to the inner contour of the oil storage cup 120, and is preferably arranged to have an interference fit, and the outer wall thereof is raised. Tightly fixed in the oil storage cup 120, the elastic material is used to achieve the sealing of the oil storage cup 120. Referring to FIG.
  • the first grease trap 20 is provided with a first flow hole 202 for the outflow of the smoke oil.
  • the first oil separating member 20 is a columnar body having a substantially semicircular cross section.
  • the first flow hole 202 is opened on the first oil separating member 20 in the axial direction, penetrates the entire column body, and communicates with the oil passage of the oil storage cup 120 to facilitate the outflow of the oil.
  • the first flow hole 202 for communicating with the oil passage of the oil storage cup 120 is opened on the first oil separating member 20.
  • a plurality of first flow holes 202 may be opened.
  • the first flow hole 202 is covered with a sealing member 201.
  • the seal 201 includes a fixed end (not labeled) and a free end (not labeled).
  • the fixed end is fixedly connected to the side wall of the first flow hole 202, that is, fixedly connected to the first oil separating member 20; the free end is disposed on the other side opposite to the fixed end, and is substantially axially aligned with the fixed end Symmetrical settings.
  • the free end abuts the control member 30, that is, the control member 30 can push the free end to move relative to the fixed end.
  • This configuration of the seal 201 facilitates its pushing away and does not fall into the reservoir to cause contamination of the soot.
  • the sealing member 201 is made of a soft rubber material such as silica gel or the like to facilitate pushing away.
  • the shape and size of the seal 201 are designed to match the shape and size of the first flow hole 202, so that an optimal sealing effect can be achieved.
  • the sealing member 201 and the first oil separating member 20 are designed as an integrally formed structure.
  • the control member 30 includes a movable member 301 and an abutting arm 302 whose one end is fixedly coupled to one side edge of the movable member 301.
  • the way of fixing the connection can be a bonding method such as bonding or welding.
  • the movable member 301 is movably mounted in the atomizing passage 110 such that it moves according to the flow of the airflow in the atomizing passage 110, and the moving member 301 moves in the same direction as the airflow in the atomizing passage 110.
  • the movable member 110 is a semi-circular flat plate and is made of a lightweight material such that the movable member 110 is moved under a small force.
  • a plurality of first through holes 3011 are formed in the movable member 301 in the axial direction of the atomizing sleeve 10, and the first through holes 3011 are designed such that the movable member 301 is more easily moved according to the flow direction of the airflow.
  • the other end of the abutment arm 302 abuts against the free end of the seal 201.
  • the abutment arm 302 is a combination of a plurality of strip-shaped sheets.
  • the abutting arm 302 includes a bent portion 3021, a connecting portion 3022, and an abutting portion 3023.
  • the bent portion 3021 is vertically connected to an edge of the movable member 301, and the abutting portion 3023 is The bent portion 3021 is disposed in parallel, and the connecting portion 3022 is vertically connected between the abutting portion 3023 and both end portions of the bent portion 3021.
  • the bent portion 3021, the connecting portion 3022 and the abutting portion 3023 are integrally formed into a frame having an inverted U-shaped longitudinal section.
  • the advantage of the control member 30 adopting such a structural design is that the control member 30 is movably placed in the atomizing sleeve 10 by the supporting force provided by the sealing member 201 when the airflow is not flowing, and the movable member 301 is suspended in the atomization.
  • the control member 30 controls the sealing member 201 to cover the oil passage to block the oil passage.
  • the purpose of designing the control member 30 that is movably abutting against the seal member 201 is to prevent the smoke oil from being trapped in the oil reservoir when not in operation, thereby avoiding the leakage of prior art smoke oil.
  • the design of the embodiment can make the atomization device simple in structure, ensure the circulation of smoke and avoid oil leakage.
  • the airflow direction refers to the direction in which the airflow in the atomizing passage 110 flows.
  • the user smokes to cause the smoke to flow out of the atomizing assembly 2, and flows through the atomizing passage 110 to the nozzle hole 11, which When the airflow flows in the same direction as the smoke flows, it is the first airflow direction.
  • the atomizing device stops working, the user blows air from the nozzle hole 11 into the atomizing passage 110, and the airflow flows in the opposite direction to the direction in which the smoke flows, for the second airflow direction.
  • the control member 30 moves according to the flow direction of the first airflow to cause the seal member 201 to open the smoke oil passage; the control member 30 moves according to the flow direction of the second airflow to cause the seal member 201 to close the smoke oil passage.
  • the atomizing device of the second embodiment provided by the present invention.
  • the difference between this embodiment and the first embodiment is only that the oil storage cup 120, the first oil separating member 20, the second oil separating member 21, and the control member 30 have different structures.
  • the remaining components and connection relationships are the same as those in the first embodiment, and are not described herein again.
  • the oil storage cup 120 is disposed along the axial direction of the atomization sleeve 10 and integrally formed with the atomization sleeve 10, and the oil storage cup 120 is provided with an oil storage chamber for accommodating the oil.
  • the oil storage cup 120 has a smoke oil passage for the circulation of the smoke oil.
  • the atomizing sleeve 10 includes a partition 111.
  • the partitioning member 111 has an inner hollow cylindrical shape and extends in the axial direction toward the opening end of the atomizing sleeve 10, and the length of the extending portion can be stored according to the amount of the soot oil and the atomizing sleeve 10 as needed. The length is determined.
  • a partitioning member 111 disposed inside the atomizing sleeve 10 divides the inner hollow portion of the atomizing sleeve 10 into two portions, one serving as an oil reservoir and the other serving as an atomizing passage 110 for the flow of smoke.
  • the oil storage chamber is cylindrical and formed between the outer wall of the partition member 111 and the inner wall of the atomization sleeve 10; the atomization passage 110 is an inner hollow portion of the partition member 111, and has a cylindrical shape, and the oil storage chamber surrounds the atomization.
  • the partitioning member 111 is preferably integrally formed with the atomizing sleeve 10, so that the sealing effect is better, the assembly is simple, and the molding process is simple.
  • the atomization passage 110 communicates with the nozzle hole 11.
  • the atomization passage 110 communicates with the oil passage during operation of the atomization device, so that the smoke oil is heated and atomized by the heating assembly, and the formed smoke flows out through the atomization passage 110 to the nozzle hole 11.
  • the oil storage cup 120 can also be a separate oil cup housed inside the atomization sleeve 10. The oil cup can be replaced and detachable. After the smoke oil is used up, the oil can be directly injected into the oil cup. Yes, it is convenient for users to use.
  • the first oil barrier member 20 is designed to be circular.
  • the first oil separating member 20 is inserted into the open end of the oil storage cup 120.
  • the first oil separating member 20 is provided with a pair of first flow holes 202, and the pair of first flow holes 202 are arranged in an axisymmetric manner.
  • the second through hole 203 formed at the center of the annular first oil barrier 20 serves to cause the mist generated by the atomizing assembly 2 to flow into the atomizing passage 110.
  • the second through hole 203 is disposed coaxially with the atomizing passage 110.
  • the second oil-repellent member 21 is inserted into the oil-storing cup 120.
  • the second grease trap 21 is located on a side of the first grease trap 20 away from the open end of the oil reservoir 120.
  • the second oil separating member 21 has the same shape as that of the first oil separating member 20 and has a circular shape.
  • a pair of second flow holes are formed in the second oil damper 21 at positions corresponding to the first flow holes 202 of the first oil damper 20, respectively.
  • a sealing member 201 is provided on each of the second flow holes.
  • a third through hole 211 is defined in the center of the second oil separating member 21 , and the third through hole 211 is in communication with the second through hole 203 and the atomizing passage 110 .
  • the second oil damper 21 can also be provided in the first embodiment.
  • the structure of the sealing member 201 is the same as that of the sealing member 201 of the first embodiment, but the difference in this embodiment is that, in this embodiment, the fixed end of the sealing member 201 and the second oil-repellent The member 21 is fixedly connected (e.g., welded, bonded, etc.) or integrally formed with the second grease trap 21.
  • the control member 30 includes a movable member 301 and a pair of abutting arms 302. One ends of the pair of abutment arms 302 are fixedly coupled to a pair of opposite side edges of the movable member 301, respectively.
  • the movable member 301 has a circular plate shape, is adapted to the cross-sectional shape of the atomizing passage 110, and is made of a lightweight material such that the movable member 301 moves under a small force.
  • a plurality of first through holes 3011 are formed in the movable member 301 in the axial direction of the atomizing sleeve 10, and the first through holes 3011 are designed such that the movable member 301 is more easily moved according to the flow direction of the airflow.
  • each abutment arm 302 abuts the free end of each seal 201, respectively.
  • the structure of each abutting arm 302 is the same as that in the first embodiment, and therefore will not be described herein.
  • Such a control member 30 is constructed such that it simultaneously controls oil supply in a plurality of orientations, thereby achieving oil supply control of the larger diameter oil storage cup 120.
  • the control member 30 has a completely different structure.
  • the control member 30 includes a movable member 301 and a connecting arm 303.
  • the movable member 301 is movably mounted in the atomizing passage 110.
  • One end of the connecting arm 303 is fixedly coupled to one side edge of the movable member 303.
  • the other end of the connecting arm 303 is fixedly connected to the sealing member 201 provided on the first flow hole 202.
  • the structure of the movable member 301 is the same as that in the first embodiment, and details are not described herein again.
  • the connecting arm 303 has a strip shape.
  • the connecting arm 303, the movable member 301 and the sealing member 201 are located on the same plane, and the three are coaxially disposed.
  • a through hole (not shown) is opened on the side wall of the oil storage cup 120 near the side of the atomizing passage 110 (ie, on the partitioning member 111), and one end of the connecting arm 303 passes through to be fixedly connected to
  • the sealing member 201 is preferably fixedly connected by welding, bonding or the like.
  • the abutment of the through hole and the connecting arm 303 forms an active fulcrum.
  • the diameter of the through hole is larger than the thickness of the connecting arm 303 so that the connecting arm 303 is freely movable in the through hole.
  • the sealing member 201 has a circular plate shape, is integrally connected with the connecting arm 303 and the movable member 301, and is movably disposed between the first oil separating member 20 and the soot cartridge 40.
  • the distance between the first grease trap 20 and the soot cartridge 40 is equal to the diameter of the through hole. This facilitates the up and down movement of the control member 30.
  • the invention also provides an electronic cigarette comprising a power supply device and an atomizing device connected to the power supply device.
  • the power supply device includes a battery sleeve and a battery for supplying power to the atomization device.
  • the battery is housed in a battery cannula.
  • the power supply device provided in this embodiment is a prior art, and the atomization device is the atomization device described in the above embodiment.
  • the battery casing of the power supply device is provided with an internal thread and a connection component in the atomization sleeve. The external threads are matched to achieve a threaded connection, and will not be described herein. It can be understood that the power supply device and the atomization device can be a non-detachable unitary structure.
  • the invention also provides a method for regulating the oil output of an electronic cigarette, the electronic cigarette comprising an atomizing device and a power supply device, the method comprising the following steps:
  • S1 a step of turning on, connecting the atomizing device and the power source device, and electrically connecting each other to realize power supply to the atomizing device;
  • the opening or closing of the smoke oil passage is realized by installing a control member 30 that can move according to the flow of the airflow in the oil passage of the atomizing device. Therefore, the use of the atomizing device provided by the present invention can prevent the occurrence of oil leakage during transportation. At the same time, the present invention designs a movable control member to open or close the oil passage according to the user's demand, so that the utilization rate of the smoke oil is improved.

Abstract

L'invention concerne un appareil d'atomisation et une cigarette électronique comportant l'appareil d'atomisation. L'appareil d'atomisation est destiné à être assemblé à un appareil d'alimentation en énergie afin de former la cigarette électronique. L'appareil d'atomisation comprend un composant d'atomisation (2) et un composant de stockage d'huile (3) destiné à renfermer de l'huile de cigarette. Un canal d'atomisation (110) permettant l'écoulement de la fumée de cigarette est également prévu à l'intérieur de l'appareil d'atomisation. Une cavité de stockage d'huile est prévue à l'intérieur du composant de stockage d'huile (3). Un canal pour huile de cigarette permettant l'écoulement de l'huile de cigarette est prévu entre le composant d'atomisation (2) et la cavité de stockage d'huile. Un élément d'étanchéité (201) recouvre le canal pour huile de cigarette de façon à en assurer l'étanchéité. L'appareil d'atomisation comprend également un élément de commande (30) qui est monté de façon mobile dans le canal d'atomisation (110), est raccordé à l'élément d'étanchéité (201), et est destiné à se déplacer en fonction de l'écoulement d'un flux d'air dans le canal d'atomisation (110) de façon à permettre à l'élément d'étanchéité (201) soit d'ouvrir soit de fermer le canal pour huile de cigarette. L'appareil d'atomisation permet non seulement d'obtenir un taux d'utilisation de l'huile de cigarette plus élevé, mais également d'éliminer les fuites d'huile.
PCT/CN2013/088238 2013-11-29 2013-11-29 Appareil d'atomisation, cigarette électronique et procédé de régulation de l'alimentation en huile WO2015078011A1 (fr)

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CN201380081321.2A CN106028847B (zh) 2013-11-29 2013-11-29 雾化装置、电子烟及供油控制方法
PCT/CN2013/088238 WO2015078011A1 (fr) 2013-11-29 2013-11-29 Appareil d'atomisation, cigarette électronique et procédé de régulation de l'alimentation en huile

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PCT/CN2013/088238 WO2015078011A1 (fr) 2013-11-29 2013-11-29 Appareil d'atomisation, cigarette électronique et procédé de régulation de l'alimentation en huile

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EP3305113A3 (fr) * 2017-01-20 2018-11-14 Shenzhen First Union Technology Co., Ltd. Cigarette électronique et son atomiseur

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CN110897198A (zh) * 2018-09-17 2020-03-24 常州市派腾电子技术服务有限公司 电子烟及电子烟的组装方法

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